Bay Zoltan Applied Research Nonprofit Ltd, Department of Nanomaterials, University of Miskolc, Department of Nanotechnology, Egyetemvaros, 606, E/7, Miskolc 3515, Hungary.
Int J Pharm. 2012 Jul 1;430(1-2):253-7. doi: 10.1016/j.ijpharm.2012.03.038. Epub 2012 Apr 2.
The general equation is derived for the equilibrium of a small solid particle and a large solution, being consistent with the thermodynamics of Gibbs. This equation can be solved in a closed form for solubility if an ideal (or an infinitely diluted) solution is considered, if the interfacial energy is independent of the composition of the solution and if all physical parameters (other than the solubility itself) are taken size independent. The solubility of the particles is found to increase with increasing its specific surface area, i.e. if non-spherical particles are applied. This simplified solution further simplifies if the shape of the solid is supposed to be spherical. This latter equation, however, is found to be in contradiction with the Ostwald-Freundlich equation, widely used in chemistry, biology and materials science to describe the size dependence of solubility of a spherical crystal. The reason for its incorrectness is shown to be due to the incorrect application of the Laplace equation. It is found that the solubility increases with decreasing the size of the dissolving phase not due to the increased curvature of the phase (Kelvin and Freundlich), but rather due to the increased specific surface area of the phase (Gibss, Ostwald). Equations are also derived for the case, when the size effect of the interfacial energy is taken into account, and when the crystal is surrounded by several planes of different interfacial energies. The role of wettability is discussed on the size dependence of solubility.
对于小固体颗粒和大溶液之间的平衡,推导出了一个通用方程,该方程与 Gibbs 热力学一致。如果考虑理想(或无限稀释)溶液,如果界面能与溶液的组成无关,并且所有物理参数(溶解度本身除外)都与尺寸无关,则可以对该方程进行封闭形式的求解。如果应用非球形颗粒,则发现颗粒的溶解度随其比表面积的增加而增加。如果假设固体的形状为球形,则简化后的溶液进一步简化。然而,后一个方程与 Ostwald-Freundlich 方程相矛盾,后者广泛应用于化学、生物学和材料科学领域,用于描述球形晶体溶解度的尺寸依赖性。其不正确的原因是由于 Laplace 方程的不正确应用。发现溶解度随溶解相尺寸的减小而增加,不是由于相的曲率增加(Kelvin 和 Freundlich),而是由于相的比表面积增加(Gibss,Ostwald)。还推导出了考虑界面能的尺寸效应以及晶体被几个具有不同界面能的平面包围的情况的方程。讨论了润湿性对溶解度尺寸依赖性的作用。